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Fuel Cells for Naval Aviation

机译:海军航空燃料电池

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Recent advances in fuel cell technology have occurred which make fuel cells increasingly attractive for electric power generation on future naval and commercial aircraft applications. These advances include significant increases in power density, the development of compact fuel reformers, and cost reductions due to commercialization efforts. The Navy's interest in aircraft fuel cells stems from their high energy efficiency (up to 40-60% for simple cycle; 60-70% for combined gas turbine/fuel cell hybrid cycles), and their negligible NOx and hydrocarbon emissions compared to conventional generators. While the U.S. Navy has been involved with fuel cell research and development as early as the 1960s, many of the early programs were for special warfare or undersea applications. In 1997, the Office of Naval Research (ONR) and Naval Sea Systems Command (NAVSEA) initiated a program to marinize commercial fuel cell technology for future Navy shipboard applications. The power density of fuel cell power systems is approaching the levels necessary for serious consideration for aircraft suitability. ONR and Naval Air Systems Command (NAVAIR) are initiating a program to develop a fuel cell power system suitable for future Navy aircraft applications, utilizing as much commercially-available technology as possible.
机译:燃料电池技术的最新进展已经出现,这使得燃料电池对于未来的海军和商用飞机应用中的发电越来越有吸引力。这些进步包括功率密度的显着提高,紧凑型燃料重整器的开发以及由于商业化努力而降低的成本。海军对飞机燃料电池的兴趣源于其高能效(简单循环可达40-60%;燃气轮机/燃料电池混合循环可达到60-70%)以及与常规发电机相比可忽略的NOx和碳氢化合物排放量。早在1960年代,美国海军就参与了燃料电池的研究与开发,但许多早期计划都是针对特种作战或海底应用的。 1997年,海军研究办公室(ONR)和海军海洋系统司令部(NAVSEA)发起了一项计划,旨在将商业燃料电池技术用于未来的海军舰船应用。燃料电池动力系统的功率密度已接近认真考虑飞机适用性所必需的水平。 ONR和海军航空系统司令部(NAVAIR)正在启动一项计划,以利用尽可能多的商业可用技术开发适合未来海军飞机应用的燃料电池动力系统。

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